Department of Life Sciences, University of Trieste, Trieste, Italy.
Dino Paladin Company, Trieste, Italy.
Biotechnol Bioeng. 2020 Feb;117(2):354-361. doi: 10.1002/bit.27217. Epub 2019 Nov 15.
A new, bifunctional recombinant protein was expressed as the fusion product of human elastin-like polypeptide (HELP) and the bilirubin-binding protein UnaG. The engineered product displays both the HELP-specific property of forming a functional hydrogel matrix and the UnaG-specific capacity of emitting green fluorescence upon ligand binding. The new fusion protein has been proven to be effective at detecting bilirubin in complex environments with high background noise. A cell culture model of the stress response, consisting of bilirubin released in the cell culture medium, was set up to assess the bilirubin-sensing properties of the functional matrix obtained by cross-linking the HELP moiety. Our engineered protein allowed us to monitor cell induction by the release of bilirubin in the culture medium on a nanomolar scale. This study shows that elastin-like protein fusion represents a versatile platform for the development of novel and commercially viable analytical and biosensing devices.
一种新型的双功能重组蛋白被表达为人类弹性蛋白样多肽(HELP)和胆红素结合蛋白 UnaG 的融合产物。该工程产物既具有 HELP 特异性的形成功能性水凝胶基质的特性,又具有 UnaG 特异性的配体结合时发出绿色荧光的能力。新的融合蛋白已被证明在具有高背景噪声的复杂环境中检测胆红素非常有效。建立了一个包含细胞培养介质中释放的胆红素的应激反应细胞培养模型,以评估通过交联 HELP 部分获得的功能性基质的胆红素传感特性。我们的工程蛋白使我们能够在纳摩尔级监测胆红素在培养基中释放对细胞的诱导作用。这项研究表明,弹性蛋白样蛋白融合代表了开发新型商业上可行的分析和生物传感设备的多功能平台。